Certificate manufacturing method and storage medium

By automatically detecting and recycling duplicated certificate cores through a reversing device, combined with multiple printing and cutting devices, the problem of operational inconvenience and low efficiency caused by duplicate certificate cores is solved, and automated and efficient certificate production is achieved.

CN117656672BActive Publication Date: 2026-02-17深圳市鸿珀智能科技有限公司 +1
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Patent Information

Application Number
CN202311653071.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-01
Publication Date
2026-02-17
Estimated Expiration
2043-12-01

AI Technical Summary

Technical Problem

Existing certificate-making equipment is cumbersome to operate and affects certificate-making efficiency when there is overlap in the certificate core, requiring manual intervention.

Method used

The system employs a reversing device to output the certificate core at different angles, automatically detects and recycles duplicates, avoiding manual intervention. Combined with a first printing device, a second printing device, a cutting device, and a laminating device, it achieves an automated certificate production process.

Benefits of technology

This improves certificate production efficiency, ensuring that the certificate production process can continue without manual intervention even when there is overlap in the certificate core, thus simplifying the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

A method for making a certificate, applied to a certificate making device, the certificate making device comprising a first printing device, a second printing device, a certificate core feeding device, a certificate core double feeding detection device, a double feeding recovery device, a reversing device, a slitting device and a laminating device; the method comprising: obtaining a result of double feeding detection of the certificate core by the certificate core double feeding detection device; if there is double feeding, the double feeding recovery device recovers the double fed certificate core; if there is no double feeding, after the first printing device completes the printing of the first type of information, the second printing device completes the printing of the second type of information, the slitting device cuts the certificate core into a certificate core original and a certificate core copy, and the laminating device laminates the certificate core original to complete the certificate making. Since manual operation is not required, the certificate making process of the next certificate core can continue, thereby improving the certificate making efficiency. The application also provides a storage medium.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of certificate equipment and certificate manufacturing technology, in particular to a certificate manufacturing method and a storage medium. BACKGROUND

[0002] Various certificates are indispensable in people's work and life, for example, driving license, driving permit, practice license, and various skill registration certificates. These certificates mostly include a certificate core paper card and a plastic film wrapped outside the certificate core paper card, and the certificate core paper card usually has text information and an image including at least a personal photo. The preparation of these certificates needs to go through many steps, for example, when making some certificates, a blank paper card needs to be placed in the printing position of a printer to print text on the blank paper card; then the paper card with printed text needs to be placed in the printing position of another printer to print an image on the paper card; and then the paper card with printed text and image needs to be placed on a plastic wrapping device for plastic wrapping.

[0003] In the current technical solution, the two printers are placed together and made into an integrated certificate manufacturing equipment, so as to realize the automation of the certificate manufacturing process. In the certificate manufacturing process, it is usually necessary to detect whether there is a double certificate core paper card, for example, whether two or more certificate core paper cards are overlapped, and if there is a double certificate core paper card, the subsequent certificate manufacturing process cannot continue. In the current technical solution, when there is a double certificate core paper card, the certificate manufacturing equipment automatically stops the certificate manufacturing process, and then a person needs to manually remove the double certificate core paper card and then continue the certificate manufacturing process. This operation is troublesome and affects the certificate manufacturing efficiency. Therefore, a new technical solution is needed. SUMMARY

[0004] The technical problem solved by the present application is that when there is a double certificate core paper card, the operation is troublesome and affects the certificate manufacturing efficiency.

[0005] According to a first aspect, in an embodiment, a certificate manufacturing method is provided, applied to a certificate manufacturing equipment, the certificate manufacturing equipment comprising a first printing device, a second printing device, a certificate core feeding device, a certificate core double detection device, a double recovery device, a reversing device, a slitting device, and a film coating device.

[0006] The first printing device is configured to print a first type of information on the certificate core; and the second printing device is configured to print a second type of information different from the first type of information on the certificate core.

[0007] The certificate core feeding device is configured to feed the certificate core to the reversing device; the certificate core double detection device is configured to detect the double of the certificate core; and the double recovery device is configured to recover the certificate core.

[0008] The reversing device is used for conveying the certificate core to the first printing device, the second printing device or the rethread recovery device, receiving the certificate core output by the first printing device, and turning over the certificate core.

[0009] The slitting device is used for slitting the certificate core into a certificate core original and a certificate core copy; and the film coating device is used for coating the certificate core original.

[0010] The method comprises:

[0011] The certificate core feeding device is controlled to convey the certificate core to the reversing device, and before the reversing device is controlled to convey the certificate core to the first printing device, the result of the rethread detection of the certificate core by the certificate core rethread detection device is acquired;

[0012] If the certificate core has rethread, the reversing device is controlled to convey the certificate core from the third angle in the first direction to the rethread recovery device to recover the rethreaded certificate core, and the certificate core feeding device is controlled to convey the certificate core to the reversing device again;

[0013] If the certificate core has no rethread, the reversing device is controlled to convey the certificate core from the first angle in the first direction to the input position of the first printing device, and after the first printing device completes the partial printing of the first type of information, the reversing device is controlled to receive the certificate core from the fourth angle in the first direction at the output position of the first printing device, turn over the certificate core, and then convey the certificate core to the input position of the first printing device again;

[0014] After the first printing device completes the remaining partial printing of the first type of information, the reversing device is controlled to receive the certificate core from the fourth angle in the first direction at the output position of the first printing device, and convey the certificate core to the input position of the second printing device from the second angle in the first direction or after turning over, convey the certificate core to the input position of the second printing device from the second angle in the first direction;

[0015] After the second printing device completes the printing of the second type of information, the slitting device is controlled to receive the certificate core at the output position of the second printing device, slit the certificate core into a certificate core original and a certificate core copy, and output the certificate core original to the film coating device, and the film coating device is controlled to coat the certificate core original to complete the certificate making.

[0016] In some embodiments, the reversing device comprises a needle punching channel and a rotating device, the input position of the needle punching channel is used for receiving the certificate core conveyed by the certificate core feeding device, and the rotating device is used for driving the output position of the needle punching channel to rotate in the first direction; and the method further comprises:

[0017] controlling the rotating device to drive the output position of the needle punching channel to a first angle of the first direction when the reversing device delivers the card core to the first printing device;

[0018] controlling the rotating device to drive the output position of the needle punching channel to a fourth angle of the first direction when the reversing device receives the card core output by the first printing device;

[0019] controlling the rotating device to drive the output position of the needle punching channel to a second angle of the first direction when the reversing device delivers the card core to the second printing device;

[0020] controlling the rotating device to drive the output position of the needle punching channel to a third angle of the first direction when the reversing device delivers the card core to the rethreading recycling device.

[0021] In some embodiments, the second printing device and the rethreading recycling device both receive the card core based on a color printing channel, the second angle is equal to the third angle; the color printing channel has an input position for receiving the card core, and a first output position and a second output position for outputting the card core; the method further comprises:

[0022] controlling the color printing channel to output the card core from the first output position to the second printing device when the reversing device delivers the card core to the second printing device;

[0023] controlling the color printing channel to output the card core from the second output position to the rethreading recycling device when the reversing device delivers the card core to the rethreading recycling device.

[0024] In some embodiments, the color printing channel comprises a transmission channel, a turning channel and a turning assembly, the input position of the transmission channel is used for receiving the card core output by the reversing device, the input position of the turning channel is used for receiving the card core output by the output position of the transmission channel, the output position of the turning channel is used for outputting the card core, and the turning assembly is used for rotating the turning channel;

[0025] the controlling the color printing channel to output the card core from the second output position to the rethreading recycling device comprises: controlling the turning assembly to rotate the turning channel so that the output position or the input position of the turning channel faces the rethreading recycling device, and outputting the card core based on the output position or the input position of the turning channel to the rethreading recycling device;

[0026] The control of the color printing channel outputs the card core to the second printing device by the first output position includes: controlling the turning component to turn the turning channel so that the output position or the input position of the turning channel is directed to the second printing device, and outputting the card core to the second printing device based on the output position or the input position of the turning channel.

[0027] In some embodiments, the turning device is further configured to drive the needle printing channel to turn in a second direction; and the method further includes:

[0028] When the reversing device flips the card core, the turning device is controlled to drive the needle printing channel to turn 180° in the second direction to achieve the flipping of the card core in the needle printing channel.

[0029] In some embodiments, the card manufacturing device further includes a rack, and the first printing device, the second printing device, the card core feeding device, the card core re-feed detection device, the re-feed recovery device, the reversing device, the slitting device, and the film laminating device are all arranged on the rack; at least the re-feed recovery device is arranged outside the rack.

[0030] In some embodiments, the slitting device includes a slitting channel and a cutting component, the input position of the slitting channel is configured to receive the card core output by the second printing device, and the cutting component is configured to cut the card core; and the slitting of the card core into a card core original and a card core copy includes:

[0031] The slitting channel is controlled to transmit the card core to a preset cutting position in the slitting channel, and the cutting part of the cutting component is controlled to move relative to the card core to slit the card core into a card core original and a card core copy.

[0032] In some embodiments, the slitting channel includes a first channel and a second channel, the input position of the first channel is configured to receive the card core output by the second printing device, the output position of the first channel is higher than the input position of the second channel in the vertical direction, and the input position of the second channel is higher than the input position of the film laminating device in the vertical direction; and the output of the card core original to the film laminating device includes:

[0033] After the second channel receives the card core output by the first channel and transmits the card core to a preset cutting position in the second channel to slit the card core into a card core original and a card core copy, the input position of the second channel is controlled to output the card core original to the input position of the film laminating device;

[0034] The output position of the second channel is controlled to output the card core copy to a copy output channel.

[0035] In some embodiments, the slitting channel further comprises a guide disposed between the first channel and the second channel, the guide comprising a first inclined section and a second inclined section, the first inclined section for guiding the certificate core from the output site of the first channel to the input site of the second channel, the second inclined section for guiding the certificate core original from the input site of the second channel to the input site of the film coating device.

[0036] According to a second aspect, one embodiment provides a computer readable storage medium having stored thereon a program, the program being executable by a processor to implement the method according to the first aspect.

[0037] According to the certificate making method of the above-mentioned embodiments, the certificate core is output based on the different angles of the reversing device in the first direction, when the certificate core has no overhang, the certificate making process can be efficiently completed, and when the certificate core has overhang, the overhang certificate core can be recycled, and since no manual operation is required, the certificate making process of the next certificate core can be continued, so that the certificate making efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0038] Figure 1 is a cross-sectional view of a certificate making device according to one embodiment;

[0039] Figure 2 is a cross-sectional view of a certificate making device according to another embodiment;

[0040] Figure 3 is a structural schematic view of a certificate making device according to one embodiment;

[0041] Figure 4 is a flowchart of a certificate making method according to one embodiment. DETAILED DESCRIPTION

[0042] The present application will be further described in details by specific embodiments with reference to the accompanying drawings. In different embodiments, similar elements are denoted by similar reference numerals. In the following embodiments, many details are described in order to make the present application better understood. However, those skilled in the art can easily recognize that some features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification, in order to avoid the core of the present application being overwhelmed by too much description, and those skilled in the art can fully understand the related operations according to the description in the specification and the general technical knowledge in the art.

[0043] In addition, features described in the specification, operations or characteristics can be combined in any appropriate manner to form various embodiments. Meanwhile, the steps or actions in the method description can also be sequentially changed or adjusted in a manner that can be apparent to those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for the purpose of clearly describing a certain embodiment, and do not mean that the sequence is necessary, unless otherwise stated that a certain sequence must be followed.

[0044] The serial numbers of components in this paper, such as "first", "second", etc., are only used to distinguish the described objects, and have no technical meaning. Unless otherwise specified, the "connection" and "coupling" in this application include direct and indirect connections (couplings).

[0045] In some embodiments of the present application, before printing the relevant information on the certificate core, the certificate core is subjected to a double sheet detection. If there is no double sheet, the certificate core is output to the first printing device and the second printing device at different angles in the first direction based on the reversing device to print the first type of information and the second type of information of the certificate core, respectively, and then the slitting and laminating of the certificate core are completed to complete the certificate making. If there is a double sheet, the certificate core is output to the double sheet recycling device at another angle in the first direction based on the reversing device to recycle the double sheet certificate core, so that the next certificate making process can be directly carried out without waiting for manual removal. Based on the different angles of the reversing device in the first direction, when the certificate core does not have a double sheet, the certificate making process can be efficiently completed, and when the certificate core has a double sheet, the double sheet certificate core can be recycled, and since no manual operation is required, the next certificate making process can continue, thereby improving the certificate making efficiency.

[0046] Some embodiments provide a certificate making method applied to a certificate making device, based on which automatic certificate making of driving licenses, driving permits, practice licenses and other certificates can be realized, and in the case of a double sheet certificate core, the double sheet certificate core can be recycled automatically without manual operation, thereby improving the certificate making efficiency.

[0047] First, the certificate making device to which the certificate making method is applied will be described, which will be described by taking the making of a driving license as an example. Please refer to Figure 1 and Figure 3 The certificate making device includes a rack 10, a first printing device 20, a second printing device 30, a certificate core feeding device 40, a certificate core double sheet detection device 50, a double sheet recycling device 60, a reversing device 70, a slitting device 80 and a laminating device 90, which will be described in detail below.

[0048] The rack 10 is used to mount or support the first printing device 20, the second printing device 30, the core loading device 40, the core re-feed detecting device 50, the re-feed recovering device 60, the reversing device 70, the slitting device 80 and the laminating device 90.

[0049] Please refer to Figure 1 The first printing device 20 is used to print first type of information on the core. The first type of information can be text information, such as name, ID number, etc. Different ID cards can print different text information. In some embodiments, the first printing device 20 can be implemented based on a pin printer. In some embodiments, the first printing device 20 has an input position and an output position. The input position of the first printing device 20 is used to receive the core input by the reversing device 70, and after the first type of information is printed, the core is output by the output position of the first printing device 20 to the reversing device 70. In some embodiments, the input position and the output position of the first printing device 20 can be the same position, or different positions in the same vertical direction.

[0050] Please refer to Figure 1 The second printing device 30 is used to print second type of information on the core. The second type of information can be image information, such as a portrait. Different ID cards can print different image information. In some embodiments, the second printing device 30 can be implemented based on an inkjet printer. In some embodiments, the second printing device 30 has an input position and an output position. The input position of the first printing device 20 is used to receive the core input by the reversing device 70, and after the second type of information is printed, the core is output by the output position of the second printing device 30 to the slitting device 80. In some embodiments, the input position and the output position of the second printing device 30 are located at opposite ends of the second printing device 30, for example, the input position of the second printing device 30 is located at the front end, and the output position is located at the rear end. In some embodiments, the input position and the output position of the second printing device 30 can be located at any two ends of the front, rear, left, right, top and bottom of the second printing device 30, or the input position and the output position of the second printing device 30 are located at different positions of the same end of the second printing device 30.

[0051] Please refer to Figure 1The certificate core feeding device 40 is configured to feed the certificate core to the reversing device 70. In some embodiments, the certificate core feeding device 40 comprises a certificate core storage box 42, a first feeding driving assembly 44, a certificate core extraction assembly 46, a feeding movable member, and a second feeding driving assembly. The certificate core storage box 42 is configured to store the unprinted certificate core. The first feeding driving assembly 44 is configured to drive at least one of the certificate core in the storage box and the certificate core extraction assembly 46 to move, so that the certificate core extraction assembly 46 is close to the certificate core in the certificate core storage box 42. The certificate core extraction assembly 46 is configured to extract the certificate core closest to it in the certificate core storage box 42. The second feeding driving assembly is configured to drive the feeding movable member to move, so that the feeding movable member is in contact with the certificate core on the certificate core extraction assembly 46, and the certificate core on the certificate core extraction assembly 46 is output to the reversing device 70.

[0052] In some embodiments, the first feeding driving assembly 44 is configured to drive the certificate core storage box 42 to move up and down in the vertical direction. For example, the first feeding driving assembly 44 comprises a lead screw, a lead screw nut, and a driving motor, wherein the lead screw nut is connected with the certificate core storage box 42, so as to drive the certificate core storage box 42 to move up and down along the lead screw. In some embodiments, the first feeding driving assembly 44 can also drive the certificate core storage box 42 to move up and down based on a linear module, a pneumatic cylinder, or the like. In some embodiments, the certificate core extraction assembly 46 is configured to suck the certificate core. For example, the certificate core extraction assembly 46 comprises a certificate core suction structure, which has a suction side for sucking the certificate core. Specifically, the certificate core suction structure can be a negative pressure fan, a negative pressure suction disc, or an electrostatic suction disc, etc.

[0053] In some embodiments, the second feeding driving assembly is configured to drive the feeding movable member to move forward and backward in the horizontal direction. The second feeding driving assembly can adopt the same driving mode as the first feeding driving assembly 44, or can adopt a different driving mode. For example, the second feeding driving assembly comprises a motor, a driving wheel, two driven wheels, a driving belt, a sliding block, and a slide rod. The slide rod extends in the horizontal direction. The driving wheel is connected with the output end of the motor. The two driven wheels are oppositely arranged, so that the driving belt moving between the two driven wheels is parallel to the slide rod. The sliding block is slidingly connected with the slide rod. The sliding block is connected with the driving belt between the two driven wheels. The sliding block is connected with the feeding movable member. The motor is configured to drive the driving wheel to rotate, so as to drive the feeding movable member to move along the extension direction of the slide rod, thereby pushing the certificate core to the reversing device 70. In some embodiments, the feeding movable member can be a lever or a claw, as long as it can push the certificate core to move towards the input position of the reversing device 70.

[0054] From the above embodiments, when the card cores are fed, the first feeding driving assembly 44 drives the card core storage box 42 to move upward to approach the card core extraction assembly 46, and the card core extraction assembly extracts the card core closest to it. Then, the second feeding driving assembly drives the card core feeding movable part to move forward horizontally to drive the card core on the card core extraction assembly 46 to output to the reversing device 70, thereby realizing the feeding of the card core.

[0055] Please refer to Figure 1 and Figure 2 The reversing device 70 is used to deliver the card core to the first printing device 20, the second printing device 30, or the re-feed recovery device 60, receive the card core output by the first printing device 20, and turn over the card core. In some embodiments, the reversing device 70 includes a needle punching channel 72 and a rotating device 74. The needle punching channel 72 can include a plurality of upper rollers and lower rollers, and a channel for transmitting the card core is formed between the upper rollers and the lower rollers, for example, the upper rollers are driven to rotate to drive the transmission of the card core. The two ends of the needle punching channel 72 are its input site and output site, respectively. The input site of the needle punching channel 72 is used to receive the card core delivered by the card core feeding device 40, and the output site of the needle punching channel 72 is used to output the card core. The rotating device 74 is used to drive the output site of the needle punching channel 72 to rotate in a first direction, so that the card core output by the output site of the needle punching channel 72 can be delivered to different angular positions in the first direction, thereby delivering the card core to the first printing device 20, the second printing device 30, or the re-feed recovery device 60, or receiving the card core output by the first printing device 20. The rotating device 74 is also used to drive the needle punching channel 72 to rotate in a second direction, so that the card core in the needle punching channel 72 is turned over. In some embodiments, the first direction can be perpendicular to the direction in which the needle punching channel 72 transmits the card core, for example, the needle punching channel 72 is used to transmit the card core in the horizontal direction, and the first direction can be the vertical direction. The rotating device 74 is used to drive the needle punching channel 72 to rotate in the vertical direction within a predetermined angular range, so that the output site of the needle punching channel 72 can output the card core at different angles in the vertical direction. In some embodiments, the second direction can be perpendicular to the direction in which the needle punching channel 72 transmits the card core, for example, the same as the first direction, or the second direction can also be perpendicular to the first direction and the direction in which the needle punching channel 72 transmits the card core at the same time. The rotating device 74 is used to drive the needle punching channel 72 to rotate 180° in the second direction, so that the card core in the needle punching channel 72 is turned over.

[0056] In some embodiments, the rotating device 74 comprises a first rotating member 75, a first transmission member 76, a second rotating member 77, a second transmission member, a first rotating motor and a second rotating motor. The first rotating motor is configured to drive the first transmission member 76 to rotate, and the first transmission member 76 is configured to drive the first rotating member 75 to rotate in a first direction. For example, the first transmission member 76 can be a gear, and the first rotating member 75 can be a sector-shaped member provided with a rack on the arc edge and engaged with the first transmission member 76. The sector-shaped member can be rotated in the first direction with the top point of the sector as the rotating point, and the rotating angle range corresponds to the central angle of the sector. The second rotating motor is configured to drive the second transmission member to rotate, and the second transmission member is configured to drive the second rotating member 77 to rotate in a second direction. For example, the second transmission member and the second rotating member 77 can both be gears engaged with each other, and the second rotating member 77 is sleeved on the needle punching channel 72 and takes the direction of the needle punching channel 72 as the rotating shaft. When the second transmission member drives the second rotating member 77 to rotate, the needle punching channel 72 is driven to rotate, thereby realizing the turning of the certificate core. In some embodiments, the needle punching channel 72, the second rotating member 77, the second transmission member and the second rotating motor can be integrally arranged on the first rotating member 75, so that when the first rotating member 75 rotates in the first direction, the whole is driven to rotate in the first direction.

[0057] As can be seen from the above embodiments, when the direction of the certificate core is changed, the needle punching channel 72 can be driven by the rotating device 74 to rotate in the first direction, so that the input position of the needle punching channel 72 can output the certificate core at different angles in the first direction, so as to realize the delivery of the certificate core to the first printing device 20, the second printing device 30 or the recharging and recycling device 60, or to receive the certificate core output by the first printing device 20. When the certificate core needs to be turned over, the needle punching channel 72 can be driven by the rotating device 74 to rotate in the second direction, so that the needle punching channel 72 and the certificate core inside it are turned over.

[0058] The core double feeding detection device 50 is used for detecting double feeding of the core. In some embodiments, the core double feeding detection device 50 can detect the thickness of the core, and determine whether there is double feeding according to the thickness of the core. When there is double feeding, the detected thickness is obviously greater than the thickness of a single core. In some embodiments, the core double feeding detection device 50 includes an ultrasonic emission module and an ultrasonic receiving module. The ultrasonic detection holes are arranged on the opposite sides of the needle punching channel 72 perpendicular to the movement path of the core. The ultrasonic emission module and the ultrasonic receiving module are arranged on the opposite sides of the needle punching channel 72, and the ultrasonic emission module and the ultrasonic receiving module are aligned with the ultrasonic detection holes. The ultrasonic emission module and the ultrasonic receiving module are used to detect whether the core in the needle punching channel 72 has double feeding problem, i.e., whether two or more cores are stacked together. In some embodiments, the core double feeding detection device 50 can also use an infrared detection module to detect the thickness of the core.

[0059] Please refer to Figure 1 and Figure 2 In some embodiments, the first printing device 20, the second printing device 30 and the double feeding recovery device 60 can receive the core output by the switching device 70 at different angles in the first direction. For example, the first printing device 20 receives the core output by the switching device 70 at a first angle in the first direction, the second printing device 30 receives the core output by the switching device 70 at a second angle in the first direction, and the double feeding recovery device 60 receives the core output by the switching device 70 at a third angle in the first direction.

[0060] In some embodiments, the switching device 70 and the first printing device 20 can be arranged inside the rack 10. In this case, the input position of the first printing device 20 can directly receive the core output by the switching device 70, or can receive the core through the sample channel. In some embodiments, when the input position and the output position of the first printing device 20 are different positions, the first printing device 20 outputs the core at a fourth angle in the first direction from the output position. When the input position and the output position of the first printing device 20 are the same position, the fourth angle in the first direction is the same as the first angle in the first direction.

[0061] In some embodiments, the second printing device 30 and the rethread recovery device 60 are both arranged outside the machine frame 10, and in this case, the second printing device 30 and the rethread recovery device 60 can both receive the certificate core output by the reversing device 70 through the sample channel. In some embodiments, the second printing device 30 and the rethread recovery device 60 can receive the certificate core output by the reversing device 70 based on different sample channels, respectively. In some embodiments, the second printing device 30 and the rethread recovery device 60 can receive the certificate core output by the reversing device 70 based on the same sample channel, for example, the second printing device 30 and the rethread recovery device 60 both receive the certificate core based on the color printing channel 32, and in this case, the second angle in the first direction is equal to the third angle in the first direction. The color printing channel 32 has an input position for receiving the certificate core, and a first output position and a second output position for outputting the certificate core, and when the certificate core needs to be output to the second printing device 30, the color printing channel 32 outputs the certificate core to the second printing device 30 through the first output position, and vice versa, the color printing channel 32 outputs the certificate core to the rethread recovery device 60 through the second output position.

[0062] Please refer to Figure 1 In some embodiments, the color printing channel 32 includes a transmission channel 33, a reversing channel 34, and a reversing assembly. The input position of the transmission channel 33 is used to receive the certificate core output by the reversing device 70, the input position of the reversing channel 34 is used to receive the certificate core output by the output position of the transmission channel 33, and the output position of the reversing channel 34 is used to output the certificate core. The reversing assembly is used to rotate the reversing channel 34, so that the output position of the reversing channel 34 is turned from facing the second printing device 30 to facing the rethread recovery device 60, or from facing the rethread recovery device 60 to facing the second printing device 30, or to facing the second printing device 30, or to facing the rethread recovery device 60, or so that the input position of the reversing channel 34 is turned from receiving the certificate core output by the transmission channel 33 to facing the rethread recovery device 60 or the second printing device 30. In some embodiments, the reversing assembly drives one end of the reversing channel 34 to rotate, and the other end of the reversing channel 34 is the axis. For example, when the input position of the reversing channel 34 is driven to rotate, the input position of the reversing channel 34 can be turned from receiving the certificate core output by the transmission channel 33 to facing the rethread recovery device 60 or the second printing device 30. For example, when the output position of the reversing channel 34 is driven to rotate, the output position of the reversing channel 34 can be turned from facing the second printing device 30 to facing the rethread recovery device 60, or from facing the rethread recovery device 60 to facing the second printing device 30, or to facing the second printing device 30, or to facing the rethread recovery device 60. In some embodiments, when the reversing assembly drives one end of the reversing channel 34 to rotate, the one end of the reversing channel 34 can rotate in the arc-shaped rotating sliding groove 35.

[0063] In some embodiments, the output end of the turning channel 34 is initially directed towards the second printing device 30 for outputting the core to the second printing device 30, and the turning assembly is configured to turn the output end of the turning channel 34 to be directed towards the rethreading device 60 for outputting the core to the rethreading device 60 after the turning channel 34 is turned. Alternatively, the output end of the turning channel 34 is initially directed towards the rethreading device 60 for outputting the core to the rethreading device 60, and the turning assembly is configured to turn the output end of the turning channel 34 to be directed towards the second printing device 30 for outputting the core to the second printing device 30 after the turning channel 34 is turned. In this case, the turning channel 34 has two ends, which are the output end and the input end, and the first output end and the second output end of the color printing channel 32 are both the output end of the turning channel 34.

[0064] In some embodiments, the input end of the turning channel 34 is initially configured to receive the core output from the conveying channel 33, and the turning assembly is configured to turn the input end of the turning channel 34 to be directed towards the second printing device 30 or the rethreading device 60 for outputting the core to the rethreading device 60 or the rethreading device 60 after the turning channel 34 is turned. In this case, the turning channel 34 has one end, which is both the input end and the output end, and the first output end and the second output end of the color printing channel 32 are both the input end of the turning channel 34.

[0065] In some embodiments, the output end of the turning channel 34 is initially directed towards the second printing device 30 for outputting the core to the second printing device 30, and the turning assembly is configured to turn the input end of the turning channel 34 to be directed towards the rethreading device 60 for outputting the core to the rethreading device 60 after the turning channel 34 is turned. Alternatively, the output end of the turning channel 34 is initially directed towards the rethreading device 60 for outputting the core to the rethreading device 60, and the turning assembly is configured to turn the input end of the turning channel 34 to be directed towards the second printing device 30 for outputting the core to the second printing device 30 after the turning channel 34 is turned. In this case, the turning channel 34 has two ends, which are the output end and the input end, and when the first output end of the color printing channel 32 is the output end of the turning channel 34, the second output end of the color printing channel 32 is the input end of the turning channel 34.

[0066] In the above embodiment, the turning channel 34 is implemented based on the upper roller and the lower roller, so the turning channel 34 can receive the card core at its input end, output the card core at its output end, or output the card core at its input end. In the above embodiment, the color printing channel 32 can be based on the turning channel 34, so that the second printing device 30 and the rethread recycling device 60 can both receive the card core based on the color printing channel 32, thereby simplifying the structure and simplifying the process.

[0067] The rethread recycling device 60 is used to recycle the card core. In some embodiments, since the rethread recycling device 60 is arranged outside the machine frame 10, when there is a recycled card core in the rethread recycling device 60, it is not necessary to open the card making equipment to take out the recycled card core inside the machine frame 10, but directly take out the recycled card core in the rethread recycling device 60 outside the machine frame 10, which is simple and convenient to operate.

[0068] Please refer to Figure 1 , the splitting device 80 is used to split the card core into a card core original and a card core copy. In some embodiments, the splitting device 80 includes a splitting channel 84 and a cutting assembly 82. The two ends of the splitting channel 84 are its input end and output end, respectively. The input end of the splitting channel 84 is used to receive the card core output by the second printing device 30, and when the card core is located at a preset cutting position in the splitting channel 84, the cutting part of the cutting assembly 82 moves relative to the card core to cut the card core and split the card core into a card core original and a card core copy. The card core original is output from the input end of the splitting channel 84 to the laminating device 90, and the card core copy is output from the output end of the splitting channel 84 to the copy output channel 94 to complete the splitting of the card core. In some embodiments, the cutting assembly 82 includes a splitting cutter, a rotating drive member, and a moving drive assembly. The splitting cutter is the cutting part of the cutting assembly 82, which can cut the card core when it is in contact with the card core in a rotating state. The rotating drive member can be used to drive the splitting cutter to rotate, and the moving drive assembly is used to drive the splitting cutter to move relative to the card core. For example, the moving drive assembly can drive the splitting cutter to move based on a drive belt and a transmission wheel.

[0069] In some embodiments, the slitting channel 84 includes a first channel 85 and a second channel 86. The input end of the first channel 85 is configured to receive the certificate core output by the second printing device 30, the output end of the first channel 85 is vertically higher than the input end of the second channel 86, and the input end of the second channel 86 is vertically higher than the input end of the film laminating device 90. When the second printing device 30 outputs the certificate core, the certificate core is received by the first channel 85 and output to the second channel 86. After the certificate core is cut at the preset cutting position of the second channel 86, the certificate core is output from the output end of the second channel 86 to the copy output channel, and the original certificate core is output from the input end of the second channel 86 to the input end of the film laminating device 90. In some embodiments, the slitting channel 84 further includes a guide 87 arranged between the first channel 85 and the second channel 86. The guide 87 includes a first inclined section and a second inclined section. The first inclined section is configured to guide the certificate core from the output end of the first channel 85 to the input end of the second channel 86. The second inclined section is configured to guide the original certificate core from the input end of the second channel 86 to the input end of the film laminating device 90. In this embodiment, due to the height difference between the output end of the first channel 85, the input end of the second channel 86, and the input end of the film laminating device 90, the input end of the second channel 86 can avoid returning to the output end of the first channel 85 when outputting the certificate core. At the same time, based on the height difference, the certificate core can be directly output to the input end of the film laminating device 90, thereby simplifying the structure and the process.

[0070] Please refer to Figure 3 , the film laminating device 90 is configured to laminate the original certificate core. In some embodiments, the film laminating device 90 can receive the certificate core returned from the second channel 86 of the slitting channel 84 based on the original sample inlet channel 92. In some embodiments, the film laminating device 90 includes a film stretching assembly, a pressing roller assembly, a heating element, and a film laminating driving assembly. The film stretching assembly is configured to stretch the first page and the second page of the film body. The heating element is configured to heat the surface of the pressing roller assembly. The film laminating driving assembly is configured to drive the pressing roller assembly to rotate, so as to heat the first page and the second page of the film body, thereby completing the lamination of the original certificate core. In some embodiments, the film stretching assembly can generate negative pressure based on a negative pressure element to suck the first page of the film body, so that the first page and the second page of the film body are stretched. In some embodiments, the heating element can be a ceramic heating element.

[0071] The above is a description of the certificate making equipment. The following describes the certificate making process of the certificate making equipment.

[0072] In some embodiments, a certificate making method is provided, which can be applied to the above-mentioned certificate making equipment. Please refer to Figure 4 The certificate making method includes the following steps:

[0073] Step 100: loading of the certificate core, detection of whether there is a double feed. The certificate core loading device 40 is controlled to deliver the certificate core to the reversing device 70, and before the reversing device 70 is controlled to deliver the certificate core to the first printing device 20, the result of the double feed detection of the certificate core by the double feed detection device 50 is obtained.

[0074] Step 200: if there is a double feed of the certificate core, then it is recycled. If there is a double feed of the certificate core, then the reversing device 70 is controlled to deliver the certificate core from the third angle in the first direction to the double feed recycling device 60, so as to recycle the double fed certificate core, and the certificate core loading device 40 is controlled to deliver the certificate core again to the reversing device 70, i.e. step 100 is continued to be executed.

[0075] Step 300: if there is no double feed of the certificate core, then information is printed. If there is no double feed of the certificate core, then the reversing device 70 is controlled to deliver the certificate core from the first angle in the first direction to the input position of the first printing device 20, and after the first printing device 20 completes the partial printing of the first type of information, the certificate core is received by the reversing device 70 from the fourth angle in the first direction at the output position of the first printing device 20, and the certificate core is delivered again to the input position of the first printing device 20 after being turned over. After the first printing device 20 completes the remaining partial printing of the first type of information, the reversing device 70 is controlled to receive the certificate core from the fourth angle in the first direction at the output position of the first printing device 20, and deliver the certificate core to the input position of the second printing device 30 from the second angle in the first direction or after being turned over from the second angle in the first direction.

[0076] Step 400: cutting and laminating of the certificate core. After the second printing device 30 completes the printing of the second type of information, the cutting device 80 is controlled to receive the certificate core at the output position of the second printing device 30, and cut the certificate core into a certificate core original and a certificate core copy, and output the certificate core original to the laminating device 90, and control the laminating device 90 to laminate the certificate core original, so as to complete the certificate making.

[0077] In some embodiments, when the reversing device 70 delivers the certificate core to the first printing device 20, the rotation device 74 is controlled to drive the output position of the needle printing channel 72 to a first angle in the first direction; when the reversing device 70 receives the certificate core output by the first printing device 20, the rotation device 74 is controlled to drive the output position of the needle printing channel 72 to a fourth angle in the first direction; when the reversing device 70 delivers the certificate core to the second printing device 30, the rotation device 74 is controlled to drive the output position of the needle printing channel 72 to a second angle in the first direction; and when the reversing device 70 delivers the certificate core to the rethreading and recycling device 60, the rotation device 74 is controlled to drive the output position of the needle printing channel 72 to a third angle in the first direction.

[0078] In some embodiments, when the reversing device 70 delivers the certificate core to the second printing device 30, the color printing channel 32 is controlled to output the certificate core from the first output position to the second printing device 30; and when the reversing device 70 delivers the certificate core to the rethreading and recycling device 60, the color printing channel 32 is controlled to output the certificate core from the second output position to the rethreading and recycling device 60.

[0079] In some embodiments, the control of the color printing channel 32 to output the certificate core from the second output position to the rethreading and recycling device 60 includes: controlling the rotation assembly to rotate the rotation channel 34 so that the output position or the input position of the rotation channel 34 faces the rethreading and recycling device 60, and output the certificate core from the output position or the input position of the rotation channel 34 to the rethreading and recycling device 60; and the control of the color printing channel 32 to output the certificate core from the first output position to the second printing device 30 includes: controlling the rotation assembly to rotate the rotation channel 34 so that the output position or the input position of the rotation channel 34 faces the second printing device 30, and output the certificate core from the output position or the input position of the rotation channel 34 to the second printing device 30.

[0080] In some embodiments, when the reversing device 70 flips the certificate core, the rotation device 74 is controlled to drive the needle printing channel 72 to rotate 180° in the second direction to achieve the flipping of the certificate core in the needle printing channel 72.

[0081] In some embodiments, the cutting of the certificate core into a certificate original and a certificate copy includes: controlling the cutting channel 84 to transmit the certificate core to a preset cutting position in the cutting channel 84, and controlling the cutting part of the cutting assembly 82 to move relative to the certificate core to cut the certificate core into a certificate original and a certificate copy.

[0082] In some embodiments, the outputting the original core to the laminating device 90 comprises: after the second channel 86 receives the core from the first channel 85 and transmits the core to a preset cutting position in the second channel 86 to cut the core into an original core and a copy core, controlling the input position of the second channel 86 to output the original core to the input position of the laminating device 90; and controlling the output position of the second channel 86 to output the copy core to a copy output channel.

[0083] In some embodiments, a computer readable storage medium is provided, and the medium stores a program which can be executed by a processor to implement the above-mentioned method for making a certificate.

[0084] Those skilled in the art can understand that all or part of the functions of the various methods in the above-mentioned embodiments can be realized by hardware or by a computer program. When all or part of the functions in the above-mentioned embodiments are realized by a computer program, the program can be stored in a computer readable storage medium, which can include read-only memory, random access memory, magnetic disk, optical disk, hard disk, etc. The above-mentioned functions are realized by executing the program by a computer. For example, the program is stored in the memory of a device, and when the program in the memory is executed by a processor, all or part of the above-mentioned functions are realized. In addition, when all or part of the functions in the above-mentioned embodiments are realized by a computer program, the program can also be stored in a server, another computer, a storage medium such as a disk, an optical disk, a flash disk or a mobile hard disk, and then downloaded or copied to the memory of a local device, or the system of the local device is updated, and when the program in the memory is executed by a processor, all or part of the functions in the above-mentioned embodiments are realized.

[0085] The above application uses specific examples to illustrate the present application, which is only used to help understand the present application and does not limit the present application. Those skilled in the art can make some simple deductions, modifications or substitutions according to the idea of the present application.

Claims

1. A method of making a document, characterized by, The application is applied to a certificate making equipment, which comprises a first printing device, a second printing device, a certificate core feeding device, a certificate core double feeding detection device, a double feeding recovery device, a reversing device, a splitting device and a laminating device. The first printing device is used for printing first type information on the certificate core; and the second printing device is used for printing second type information different from the first type information on the certificate core. The certificate core feeding device is used for conveying the certificate core to the reversing device; the certificate core double feeding detection device is used for detecting double feeding of the certificate core; and the double feeding recovery device is used for recovering the certificate core. The reversing device is used for conveying the certificate core to the first printing device, the second printing device or the double feeding recovery device, receiving the certificate core output by the first printing device and turning over the certificate core; the reversing device comprises a needle punching channel and a rotating device, an input position of the needle punching channel is used for receiving the certificate core conveyed by the certificate core feeding device, and the rotating device is used for driving an output position of the needle punching channel to rotate in a first direction. The splitting device is used for splitting the certificate core into a certificate core original and a certificate core copy. The laminating device is used for laminating the certificate core original. The method comprises the following steps: controlling the certificate core feeding device to convey the certificate core to the reversing device, and obtaining a result of double feeding detection of the certificate core by the certificate core double feeding detection device before controlling the reversing device to convey the certificate core to the first printing device; if the certificate core has double feeding, controlling the reversing device to convey the certificate core from a third angle in the first direction to the double feeding recovery device to recover the double feeding certificate core, and controlling the certificate core feeding device to convey the certificate core to the reversing device again; if the certificate core has no double feeding, controlling the reversing device to convey the certificate core from a first angle in the first direction to an input position of the first printing device, and after the first printing device completes partial printing of the first type information, receiving the certificate core from a fourth angle in the first direction at an output position of the first printing device, turning over the certificate core and conveying the certificate core to the input position of the first printing device again; after the first printing device completes remaining partial printing of the first type information, controlling the reversing device to receive the certificate core from the fourth angle in the first direction at the output position of the first printing device, and conveying the certificate core from a second angle in the first direction to an input position of the second printing device or conveying the certificate core from the second angle in the first direction to the input position of the second printing device after turning over the certificate core; after the second printing device completes printing of the second type information, controlling the splitting device to receive the certificate core at an output position of the second printing device, splitting the certificate core into a certificate core original and a certificate core copy, outputting the certificate core original to the laminating device, and controlling the laminating device to laminate the certificate core original to complete certificate making; when the reversing device conveys the certificate core to the first printing device, controlling the rotating device to drive the output position of the needle punching channel to the first angle in the first direction. controlling the rotating device to drive the output position of the needle printing channel to a fourth angle in the first direction when the reversing device receives the card core output by the first printing device; controlling the rotating device to drive the output position of the needle printing channel to a second angle in the first direction when the reversing device delivers the card core to the second printing device; controlling the rotating device to drive the output position of the needle printing channel to a third angle in the first direction when the reversing device delivers the card core to the rethread recovery device.

2. The document production method of claim 1, wherein, The second printing device and the rethread recovery device both receive the card core based on a color printing channel, the second angle is equal to the third angle; the color printing channel has an input position for receiving a card core, and a first output position and a second output position for outputting a card core; the method further comprises: controlling the color printing channel to output the card core from the first output position to the second printing device when the reversing device delivers the card core to the second printing device; controlling the color printing channel to output the card core from the second output position to the rethread recovery device when the reversing device delivers the card core to the rethread recovery device.

3. The document production method of claim 2, wherein, The color printing channel comprises a transmission channel, a turning channel and a turning assembly, the input position of the transmission channel is used for receiving the card core output by the reversing device, the input position of the turning channel is used for receiving the card core output by the output position of the transmission channel, the output position of the turning channel is used for outputting the card core, and the turning assembly is used for rotating the turning channel; The control of the color printing channel to output the card core from the second output position to the rethread recovery device comprises: controlling the turning assembly to rotate the turning channel, so that the output position or the input position of the turning channel faces the rethread recovery device, and outputting the card core based on the output position or the input position of the turning channel to the rethread recovery device; The control of the color printing channel to output the card core from the first output position to the second printing device comprises: controlling the turning assembly to rotate the turning channel, so that the output position or the input position of the turning channel faces the second printing device, and outputting the card core based on the output position or the input position of the turning channel to the second printing device.

4. The document production method of claim 1, wherein, The rotating device is also used for driving the needle printing channel to rotate in a second direction; the method further comprises: controlling the rotating device to drive the needle printing channel to rotate 180° in the second direction when the reversing device flips the card core, so as to realize the flipping of the card core in the needle printing channel.

5. The document production method according to any one of claims 1 to 4, wherein The card manufacturing device further comprises a rack, the first printing device, the second printing device, the card core feeding device, the card core rethread detection device, the rethread recovery device, the reversing device, the slitting device and the laminating device are all arranged on the rack; at least the rethread recovery device is arranged outside the rack.

6. The document production method according to any one of claims 1 to 4, wherein The slitting device comprises a slitting channel and a cutting assembly, the input position of the slitting channel is used for receiving the card core output by the second printing device, and the cutting assembly is used for cutting the card core; The cutting of the certificate core into a certificate core original and a certificate core copy comprises: The cutting channel controls the transmission of the certificate core to a preset cutting position in the cutting channel, and the cutting part of the cutting assembly moves relative to the certificate core to cut the certificate core into a certificate core original and a certificate core copy.

7. The document production method of claim 6, wherein, The cutting channel comprises a first channel and a second channel, the input position of the first channel is used to receive the certificate core output by the second printing device, the output position of the first channel is higher than the input position of the second channel in the vertical direction, and the input position of the second channel is higher than the input position of the laminating device in the vertical direction; the output of the certificate core original to the laminating device comprises: After the second channel receives the certificate core output by the first channel and transmits the certificate core to a preset cutting position in the second channel to cut the certificate core into a certificate core original and a certificate core copy, the input position of the second channel controls the output of the certificate core original to the input position of the laminating device; The output position of the second channel controls the output of the certificate core copy to the copy output channel.

8. The document production method of claim 7 wherein, The cutting channel further comprises a guide member arranged between the first channel and the second channel, the guide member comprises a first inclined section and a second inclined section, the first inclined section is used to guide the certificate core from the output position of the first channel to the input position of the second channel, and the second inclined section is used to guide the certificate core original from the input position of the second channel to the input position of the laminating device.

9. A computer-readable storage medium, characterized in that, The medium stores a program, and the program can be executed by the processor to realize the method in any one of claims 1-8.

Citation Information

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